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Modeling of state-to-state oxygen kinetics behind reflected shock waves

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Publication:2103882
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DOI10.1134/S1063454122030104zbMath1503.76083OpenAlexW4294958600MaRDI QIDQ2103882

M. Yu. Melnik, D. S. Kravchenko, E. V. Kustova

Publication date: 9 December 2022

Published in: Vestnik St. Petersburg University. Mathematics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1134/s1063454122030104


zbMATH Keywords

Runge-Kutta schemeChapman-Enskog methoddissociationzeroth-order approximationpartial vibrational-chemical relaxationvibrationally nonequilibrium gas


Mathematics Subject Classification ID

Shock waves and blast waves in fluid mechanics (76L05) Finite difference methods applied to problems in fluid mechanics (76M20) Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Reaction effects in flows (76V05)


Related Items (1)

Scientific school of nonequilibrium aeromechanics at St. Petersburg State University




Cites Work

  • Numerical simulations of shock waves in viscous carbon dioxide flows using finite volume method
  • Spatially homogeneous relaxation of CO molecules with resonant \textit{VE} transitions
  • Chemical Relaxation with Preferential Dissociation from Excited Vibrational Levels




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